Title :
Optimal inverter VAR control in distribution systems with high PV penetration
Author :
Farivar, M. ; Neal, R. ; Clarke, C. ; Low, S.
Abstract :
The intent of the study detailed in this paper is to demonstrate the benefits of inverter var control on a fast timescale to mitigate rapid and large voltage fluctuations due to the high penetration of photovoltaic generation and the resulting reverse power flow. Our approach is to formulate the volt/var control as a radial optimal power flow (OPF) problem to minimize line losses and energy consumption, subject to constraints on voltage magnitudes. An efficient solution to the radial OPF problem is presented and used to study the structure of optimal inverter var injection and the net benefits, taking into account the additional cost of inverter losses when operating at non-unity power factor. This paper will illustrate how, depending on the circuit topology and its loading condition, the inverter´s optimal reactive power injection is not necessarily monotone with respect to their real power output. The results are demonstrated on a distribution feeder on the Southern California Edison system that has a very light load and a 5 MW photovoltaic (PV) system installed away from the substation.
Keywords :
invertors; load flow control; minimisation; photovoltaic power systems; power consumption; power distribution control; power factor; voltage control; PV system; Southern California Edison system; circuit topology; distribution feeder; distribution systems; energy consumption minimization; high PV penetration; inverter losses; large voltage fluctuation mitigation; line loss minimization; loading condition; nonunity power factor; optimal inverter var control; optimal inverter var injection; optimal reactive power injection; photovoltaic generation; photovoltaic system; radial OPF problem; radial optimal power flow problem; rapid voltage fluctuation mitigation; reverse power flow; volt/var control; Capacitors; Control systems; Inverters; Photovoltaic systems; Reactive power; Substations; Voltage control; DC/AC inverter; Distribution systems; optimal power flow; photovoltaics (PV) generation; volt/var control;
Conference_Titel :
Power and Energy Society General Meeting, 2012 IEEE
Conference_Location :
San Diego, CA
Print_ISBN :
978-1-4673-2727-5
Electronic_ISBN :
1944-9925
DOI :
10.1109/PESGM.2012.6345736